The wavefunction of a quantum $S^1 \times S^2$ universe

Fuente: arXiv
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Main Authors: Turiaci, Gustavo J., Wu, Chih-Hung
Format: Preprint
Published: 2025
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author Turiaci, Gustavo J.
Wu, Chih-Hung
author_facet Turiaci, Gustavo J.
Wu, Chih-Hung
contents We study quantum gravity corrections to the no-boundary wavefunction describing a universe with spatial topology $S^1\times S^2$. It has been suggested that quantum effects become increasingly important when the size of the circle is large relative to the sphere. In this paper, we confirm this claim by an explicit four-dimensional one-loop calculation of the gravitational path integral preparing such a state. In the process, we clarify some aspects of the gravitational path integral on complex spacetimes. These quantum corrections play a crucial role in ensuring that the norm of the wavefunction is naturally expressed in terms of a path integral over $S^2 \times S^2$ at the classical level. We extend some of the analysis to more general spatial topologies, as well as to the inclusion of fermions.
format Preprint
id arxiv_https___arxiv_org_abs_2503_14639
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The wavefunction of a quantum $S^1 \times S^2$ universe
Turiaci, Gustavo J.
Wu, Chih-Hung
High Energy Physics - Theory
General Relativity and Quantum Cosmology
We study quantum gravity corrections to the no-boundary wavefunction describing a universe with spatial topology $S^1\times S^2$. It has been suggested that quantum effects become increasingly important when the size of the circle is large relative to the sphere. In this paper, we confirm this claim by an explicit four-dimensional one-loop calculation of the gravitational path integral preparing such a state. In the process, we clarify some aspects of the gravitational path integral on complex spacetimes. These quantum corrections play a crucial role in ensuring that the norm of the wavefunction is naturally expressed in terms of a path integral over $S^2 \times S^2$ at the classical level. We extend some of the analysis to more general spatial topologies, as well as to the inclusion of fermions.
title The wavefunction of a quantum $S^1 \times S^2$ universe
topic High Energy Physics - Theory
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2503.14639